More Randomness, More Security!

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Randomness Rising Ciphers:

[The Bit-Flip Protocol]

» » » Equivoe-T: Transportation Equivocation Cryptography
» » » Denial Cryptography based on Graph Theory
» » » The Ultimate Transposition Cipher (UTC)
» » » Drone Targeted Cryptography
» » » T-Proof: Secure Communication via Non-Algorithmic Randomization
» » » Cryptography of Things: Cryptography Designed for Low Power, Low Maintenance Nodes in the Internet of Things
» » » Virtual matrix encryption (VME) and virtual key cryptographic method and apparatus


Randomness Rising  Theory & Principles:

» » » Redividing Complexity Between Algorithms and Keys
» » » Encryption Sticks (Randomats)
» » » Essential Shannon Security with Keys Smaller Than the Encrypted Message
» » » Tailored Key Encryption
» » » s(n) An Arithmetic Function of Some Interest, and Related Arithmetic
» » » Integer Arithmetic without Arithmetic Addition
» » » Cyber Passport: Preventing Massive Identity Theft
» » » Shannon Revisited: Considering a More Tractable Expression to Measure and Manage Intractability, Uncertainty, Risk, Ignorance, and Entropy
» » » Hush Functions Extended to Any Size Input versus Any Size Output
» » » Probability Durable Entropic Advantage


Background:

» » » A Brief History of Confidential & Secure Communication

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